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Aptamer Efficacies for In Vitro and In Vivo Modulation of αC-Conotoxin PrXA Pharmacology

机译:αC-芋螺毒素PrXA药理学的体外和体内调节的适体功效

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摘要

The medical staff is often powerless to treat patients affected by drug abuse or misuse and poisoning. In the case of envenomation, the treatment of choice remains horse sera administration that poses a wealth of other medical conditions and threats. Previously, we have demonstrated that DNA-based aptamers represent powerful neutralizing tools for lethal animal toxins of venomous origin. Herein, we further pursued our investigations in order to understand whether all toxin-interacting aptamers possessed equivalent potencies to neutralize αC-conotoxin PrXA in vitro and in vivo. We confirmed the high lethality in mice produced by αC-conotoxin PrXA regardless of the mode of injection and further characterized myoclonus produced by the toxin. We used high-throughput patch-clamp technology to assess the effect of αC-conotoxin PrXA on ACh-mediated responses in TE671 cells, responses that are carried by muscle-type nicotinic receptors. We show that 2 out of 4 aptamers reduce the affinity of the toxin for its receptor, most likely by interfering with the pharmacophore. In vivo, more complex responses on myoclonus and mice lethality are observed depending on the type of aptamer and mode of administration (concomitant or differed). Concomitant administration always works better than differed administration indicating the stability of the complex in vivo. The most remarkable conclusion is that an aptamer that has no or a limited efficacy in vitro may nevertheless be functional in vivo probably owing to an impact on the biodistribution or pharmacokinetics of the toxin in vivo. Overall, the results highlight that a blind selection of aptamers against toxins leads to efficient neutralizing compounds in vivo regardless of the mode of action. This opens the door to the use of aptamer mixtures as substitutes to horse sera for the neutralization of life-threatening animal venoms, an important WHO concern in tropical areas.
机译:医务人员通常无能为力以治疗受药物滥用或滥用和中毒影响的患者。在毒化的情况下,选择的治疗方法仍然是马血清管理,这会带来许多其他医疗状况和威胁。以前,我们已经证明基于DNA的适体代表了有毒的致命动物毒素的强大中和工具。在本文中,我们进一步进行了研究,以了解所有与毒素相互作用的适体在体外和体内是否具有等效的中和αC-芋螺毒素PrXA的能力。我们证实了无论注射方式如何,αC-芋螺毒素PrXA产生的小鼠均具有高致死性,并进一步表征了毒素产生的肌阵挛。我们使用了高通量膜片钳技术来评估αC-芋螺毒素PrXA对TE671细胞中ACh介导的反应(由肌肉型烟碱受体进行的反应)的影响。我们显示出4个适体中有2个会降低毒素对其受体的亲和力,这很可能是通过干扰药效团来实现的。在体内,根据适体的类型和给药方式(伴随或不同),观察到了对肌阵挛和小鼠致死性更复杂的反应。伴随给药总是比不同给药更好,表明复合物在体内的稳定性。最显着的结论是,在体外没有或具有有限功效的适体可能仍然由于在体内对毒素的生物分布或药代动力学的影响而在体内起作用。总体而言,结果突出表明,针对毒素的适体的盲目选择导致体内有效的中和化合物,无论其作用方式如何。这为使用适体混合物代替马血清打开了大门,以中和威胁生命的动物毒液,这是世卫组织在热带地区的一项重要关切。

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